Zobrazeno 1 - 10
of 32
pro vyhledávání: '"Anda Barkane"'
Autor:
Marina Corvo Alguacil, Kentaro Umeki, Sergejs Gaidukovs, Anda Barkāne, Shujie You, Roberts Joffe
Publikováno v:
Current Research in Green and Sustainable Chemistry, Vol 9, Iss , Pp 100431- (2024)
Carbon fiber, despite its exceptional properties, remains underutilized due to monetary and environmental concerns. Concurrently, the imminent challenge associated with rising quantities of End-of-Life CFRP (carbon fiber reinforced polymer) demands t
Externí odkaz:
https://doaj.org/article/fa1ee65561814be39fd52b07279057c0
Publikováno v:
Foods, Vol 12, Iss 22, p 4136 (2023)
In response to rising concerns over the environmental and human health ramifications of polymers derived from petroleum, particularly in the food packaging industry, research has pivoted towards more sustainable materials. Poly(butylene succinate) (P
Externí odkaz:
https://doaj.org/article/5007fc792c774df7b9d68e0e8bed4248
Autor:
Sergejs Beluns, Sergejs Gaidukovs, Oskars Platnieks, Anda Barkane, Gerda Gaidukova, Liga Grase, Martins Nabels-Sneiders, Andrejs Kovalovs, Vijay Kumar Thakur
Publikováno v:
Carbohydrate Polymer Technologies and Applications, Vol 3, Iss , Pp 100207- (2022)
In this work, we report for the first time the clean manufacturing of cellulose nanopapers by a green path of mixing nanocellulose suspension in water with lignin and xylan. The procedure involves grinding the old wastepaper, microfluidizing, casting
Externí odkaz:
https://doaj.org/article/be8368ec2df641d49bee1d37d3419992
Publikováno v:
Nanomaterials, Vol 11, Iss 7, p 1791 (2021)
There is an opportunity to use nanocellulose as an efficient renewable reinforcing filler for polymer composites. There have been many investigations to prove the reinforcement concept of different nanocellulose sources for thermoplastic and thermose
Externí odkaz:
https://doaj.org/article/fc4fe95fdbf2479691efec1e24f51ac8
Autor:
Oskars Platnieks, Sergejs Gaidukovs, Anda Barkane, Gerda Gaidukova, Liga Grase, Vijay Kumar Thakur, Inese Filipova, Velta Fridrihsone, Marite Skute, Marianna Laka
Publikováno v:
Molecules, Vol 25, Iss 1, p 121 (2019)
We report the manufacturing and characterization of poly (butylene succinate) (PBS) and micro cellulose (MCC) woody-like composites. These composites can be applied as a sustainable woody-like composite alternative to conventional fossil polymer-base
Externí odkaz:
https://doaj.org/article/ddec733c68d0413ababadd18e997de30
Publikováno v:
ACS Sustainable Chemistry & Engineering. 11:6578-6591
Autor:
Maksims Jurinovs, Anda Barkane, Oskars Platnieks, Sergejs Beluns, Liga Grase, Reiner Dieden, Mariapaola Staropoli, Daniel F. Schmidt, Sergejs Gaidukovs
Publikováno v:
ACS Applied Polymer Materials. 5:3104-3118
Autor:
Sabine Briede, Oskars Platnieks, Anda Barkane, Igors Sivacovs, Armands Leitans, Janis Lungevics, Sergejs Gaidukovs
Publikováno v:
Coatings; Volume 13; Issue 3; Pages: 657
The modern coating market is dominated by acrylic, polyurethane, and polyester polymer resins produced from unsustainable fossil resources. Herein, we propose the preparation of resins from biobased components to produce functional and solvent-free w
Autor:
Vijay Kumar Thakur, Sergejs Gaidukovs, Gerda Gaidukova, Oskars Platnieks, Sergejs Beluns, Olesja Starkova, Anda Barkane
Publikováno v:
Journal of Polymers and the Environment. 30:1435-1450
The transition from fossil-based to bio-based materials requires in-depth environmental durability analysis for material engineering and construction applications. We report the hydrothermal aging and biodegradation effect on 6 types of compatibilize
Autor:
Matthias Kundt, Annette M. Schmidt, Karin Koch, Heiko Wende, Alexey Eremin, Joachim Landers, Anda Barkane, Samira Webers, Hajnalka Nádasi
Publikováno v:
Physical Chemistry Chemical Physics. 23:24557-24569
Liquid crystal (LC) based magnetic materials consisting of LC hosts doped with functional magnetic nanoparticles enable optical switching of the mesogens at moderate magnetic field strengths and thereby open the pathway for the design of novel smart